Bangs J D, Ransom D M, McDowell M A, Brouch E M
Department of Medical Microbiology and Immunology, University of Wisconsin-Madison Medical School, 53706, USA.
EMBO J. 1997 Jul 16;16(14):4285-94. doi: 10.1093/emboj/16.14.4285.
Using transformed procyclic trypanosomes, the synthesis, intracellular transport and secretion of wild-type and mutant variant surface glycoprotein (VSG) is characterized. We find no impediment to the expression of this bloodstream stage protein in insect stage cells. VSG receives a procyclic-type phosphatidylinositol-specific phospholipase C-resistant glycosyl phosphatidylinositol (GPI) anchor, dimerizes and is N-glycosylated. It is transported to the plasma membrane with rapid kinetics (t(1/2) approximately 1 h) and then released by a cell surface zinc-dependent metalloendoprotease activity, a possible homolog of leishmanial gp63. Deletion of the C-terminal GPI addition signal generates a soluble form of VSG that is exported with greatly reduced kinetics (t(1/2) approximately 5 h). Fusion of the procyclic acidic repetitive protein (PARP) GPI anchor signal to the C-terminus of the truncated VSG reporter restores both GPI addition and transport competence, suggesting that GPI anchors play a critical role in the folding and/or forward transport of newly synthesized VSG. The VSG-PARP fusion is also processed near the C-terminus by events that do not involve N-linked oligosaccharides and which are consistent with GPI side chain modification. This unexpected result suggests that GPI processing may be influenced by adjacent peptide sequence or conformation.
利用转化的前循环锥虫,对野生型和突变型可变表面糖蛋白(VSG)的合成、细胞内运输和分泌进行了表征。我们发现在昆虫阶段细胞中表达这种血流阶段蛋白没有障碍。VSG接受一种前循环型磷脂酰肌醇特异性磷脂酶C抗性糖基磷脂酰肌醇(GPI)锚定,二聚化并进行N-糖基化。它以快速动力学(半衰期约1小时)转运到质膜,然后通过细胞表面锌依赖性金属内蛋白酶活性释放,这可能是利什曼原虫gp63的同源物。删除C末端GPI添加信号会产生一种可溶性形式的VSG,其输出动力学大大降低(半衰期约5小时)。将前循环酸性重复蛋白(PARP)GPI锚定信号融合到截短的VSG报告基因的C末端可恢复GPI添加和运输能力,这表明GPI锚定在新合成的VSG的折叠和/或向前运输中起关键作用。VSG-PARP融合蛋白在C末端附近也通过不涉及N-连接寡糖且与GPI侧链修饰一致的事件进行加工。这一意外结果表明GPI加工可能受相邻肽序列或构象的影响。